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Investigation of the performances of X-Ku band 3D printing pyramidal horn antennas coated with the different metals

机译:X-Ku频段3D打印金字塔形金属喇叭天线的性能研究

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摘要

In this study, X-Ku band 3D printed horn antennas coated with copper, chromium and nickel are designed and fabricated by means of fused deposition modelling (FDM) technique that is one of the additive manufacturing methods. Proposed fabrication method consists of two main steps that are to make the skeleton of horn antenna from acrylonitrile butadiene styrene (ABS) thermoplastic via 3D printer and to perform metal plating over the all surface of antenna by using the electroless plating and then electroplating processes. The simulation and measurement results for fabricated prototype of the copper-plated horn antenna are obtained in 10-15 GHz frequency, which is suitable for satellite communications. It is investigated the performances of these antennas in terms of the gain of antenna. These results confirm that the copper-plated horn antenna has the best performance in the three antennas due to having low relative permeability and high conductivity.
机译:在这项研究中,通过融合沉积建模(FDM)技术(这是增材制造方法之一)设计和制造了涂覆有铜,铬和镍的X-Ku波段3D打印喇叭天线。提议的制造方法包括两个主要步骤,分别是通过3D打印机从丙烯腈-丁二烯-苯乙烯(ABS)热塑性塑料制成号角天线的骨架,以及通过先进行无电镀后再进行电镀工艺在天线的整个表面上进行金属电镀。在10-15 GHz频率下获得了镀铜号角天线原型的仿真和测量结果,适用于卫星通信。根据天线的增益研究了这些天线的性能。这些结果证实,镀铜号角天线由于具有低的相对磁导率和高的导电性而在三个天线中具有最佳的性能。

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